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Multi-Platform Software for Electrical and Microstructural Analysis of Silicon Solar Cell Metallization
Małgorzata Musztyfaga-Staszuk1, Dušan Pudiš2, Rafał Honysz3
1Materials Investigating Laboratory, Faculty of Mechanical Technology, Silesian University of Technology, Konarskiego 18A Street, 44-100 Gliwice, Poland.
Abstract:
This paper presents proprietary, multi-platform software developed in Python for analyzing the electrical and microstructural properties of silicon solar cell metallization. Utilizing a sample set of 20 commercial solar cells, electrical resistivity and contact resistance measurements obtained via the potential difference method were correlated with high-resolution topographic data from AFM, SEM, and CLSM. This process enabled the quantification of how specific features, such as surface roughness and finger height, directly influence electrical performance. The developed algorithms offer high-fidelity predictive capabilities, with relative errors below 4%. This "virtual laboratory" serves as a transformative research and educational tool, allowing for complex materials analysis while avoiding the necessity for destructive testing.

